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The Eukaryote Genome Annotation Platform at Genoscope 17
Betina M. Porcel; Franck Aniere; Sylvain Bonneval; Benjamin Noel; Jean-Marc Aury; Corinne Da Silva; Olivier Jaillon; France Denoeud; Claude Scarpelli; Jean Weissenbach; Patrick Wincker; François Artiguenave.
The Genoscope annotation workflow for eukaryote genomes relies on evidence from ab initio gene models predictions combined with homology searches, using collections of expressed sequences - full length cDNAs, ESTs or massive-scale mRNA sequences from the same or closely related organisms – proteins or other genomic sequences. Global analysis of these drafts or complete sequences are then combining both approaches in the form of gene prediction data integration using GAZE, capable to identify a majority of the existing gene features. Although of very good quality, gene-modelling remains still tentative at the end of the process. Even though computational predictors are useful on large scale annotation for global genomics analysis, there is no...
Tipo: Poster Palavras-chave: Genetics & Genomics; Bioinformatics.
Ano: 2009 URL: http://precedings.nature.com/documents/3457/version/1
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Deciphering the genome structure and paleohistory of _Theobroma cacao_ 17
Xavier Argout; Jerome Salse; Jean Marc Aury; Gaetan Droc; Jerome Gouzy; Mathilde Allegre; Cristian Chaparro; Thierry Legavre; Mark Guiltinan; Siela Maximova; Michael Abrouk; Florent Murat; Olivier Fouet; Julie Poulain; Manuel Ruiz; Yolande Roguet; Maguy Rodier-Goud; Jose Fernandes Barbosa-Neto; Francois Sabot; Dave Kudrna; Jetty Siva S. Ammiraju; Stephan C. Schuster; John E. Carlson; Erika Sallet; Schiex T.; Anne Dievart; Melissa Kramer; Laura Gelley; Zi Sh; Aurélie Bérard; Christopher Viot; Michel Boccara; Ange Marie Risterucci; Valentin Guignon; Xavier Sabau; Michael Axtell; Zhaorong Ma; Yufan Zhang; Spencer Brown; Mickael Bourge; Wolfgang Golser; Xiang Song; Didier Clement; Ronan Rivalan; Mathias Tahi; Joseph Moroh Akaza; Bertrand Pitollat; Karina Gramacho; Angélique D’Hont; Dominique Brunel; Diogenes Infante; Ismael Kebe; Pierre Costet; Rod Wing; W. Richard McCombie; Emmanuel Guiderdoni; Francis Quetier; Olivier Panaud; Patrick Wincker; Stephanie Sidibe-Bocs; Claire Lanaud.
We sequenced and assembled the genome of _Theobroma cacao_, an economically important tropical fruit tree crop that is the source of chocolate. The assembly corresponds to 76% of the estimated genome size and contains almost all previously described genes, with 82% of them anchored on the 10 _T. cacao_ chromosomes. Analysis of this sequence information highlighted specific expansion of some gene families during evolution, for example flavonoid-related genes. It also provides a major source of candidate genes for _T. cacao_ disease resistance and quality improvement. Based on the inferred paleohistory of the T. cacao genome, we propose an evolutionary scenario whereby the ten _T. cacao_ chromosomes were shaped from an ancestor through eleven chromosome...
Tipo: Marker Paper / Data Plan Palavras-chave: Genetics & Genomics; Plant Biology; Evolutionary Biology; Data Standards.
Ano: 2010 URL: http://precedings.nature.com/documents/4908/version/1
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